Reduced order modeling of flashing two-phase jets

William Gurecky, Erich Schneider, Davis Ballew

Research output: Contribution to journalArticlepeer-review

Abstract

In the event of a Loss of Coolant Accident (LOCA) in a pressurized water reactor, the escaping coolant produces a highly energetic flashing jet with the potential to damage surrounding structures. In LOCA analysis, the goal is often to evaluate many break scenarios in a Monte Carlo style simulation to evaluate the resilience of a reactor design. Therefore, in order to quickly predict the damage potential of flashing jets, it is of interest to develop a reduced order model that relates the damage potential of a jet to the pressure and temperature upstream of the break and the distance from the break to a given object upon which the jet is impinging. This work presents framework for producing a Reduced Order Model (ROM) that may be informed by measured data, Computational Fluid Dynamics (CFD) simulations, or a combination of both. The model is constructed by performing regression analysis on the pressure field data, allowing the impingement pressure to be quickly reconstructed for any given upstream thermodynamic condition within the range of input data. The model is applicable to both free and fully impinging two-phase flashing jets.

Original languageEnglish
Pages (from-to)60-72
Number of pages13
JournalNuclear Engineering and Design
Volume294
DOIs
StatePublished - Dec 1 2015
Externally publishedYes

Funding

The funding for this research is provided by South Texas Project Nuclear Operating Company . We would like to acknowledge Dr. Bruce Letellier of Fauske and Associates for his guidance.

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